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首页> 外文期刊>Genes and genomics >Mapping of QTL traits in corn using a RIL population derived from a cross of dent corn x waxy corn
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Mapping of QTL traits in corn using a RIL population derived from a cross of dent corn x waxy corn

机译:使用从凹齿玉米x糯玉米杂交获得的RIL群体绘制玉米QTL性状

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In this study, 80 F-7:8 recombinant inbred lines, derived from a cross between dent corn and waxy corn, were evaluated for ten grain yield and kernel quality-related traits over a 2-year period. A total of 39 quantitative trait loci (QTLs) and 74 epistatic interactions were confirmed in 2011 and 2012. All QTLs detected in 2011 showed greater than 10 % phenotypic variation (10.21-50.3 %). In 2012, 19 of 23 QTLs showed phenotypic variation greater than 10 % (6.46-93.71 %). Among all QTLs detected, qAC9 had the highest phenotypic variance (93.71 %). Additionally, qEH4, qSEL6, and q100KW10 were stably expressed. These QTLs had higher phenotypic variance and were observed in both years; therefore, they may be considered major QTLs. Some new QTLs identified in this study were located on different loci compared with other studies. The genetic region (bin 4.08) strongly controls plant height and ear height, and results from pleiotropy and/or tight linkage. qST3 and qEH3 were co-located within two common adjacent simple sequence repeat (SSR) markers (umc2275 and umc1273), whereas qEL6 and qSEL6 were co-located within two common adjacent SSR markers (umc2309 and bnlg238). The QTLs related to kernel quality traits, qWC4 (water content) was tightly linked to the gene bt2 (brittle endosperm 2) and qAC9 (amylose content) located between the flanking markers umc1634 and wx1 (waxy1). Thus, these SSR markers are a useful selection tool for screening grain yield and yield component traits.
机译:在这项研究中,评估了80个F-7:8重组自交系,这些自交系来自凹齿玉米和糯玉米之间的杂交,在两年内评估了十个籽粒产量和籽粒品质相关性状。在2011年和2012年,共确认了39个数量性状基因座(QTL)和74个上位性相互作用。2011年检测到的所有QTL表现出大于10%的表型变异(10.21-50.3%)。 2012年,在23个QTL中,有19个的表型变异大于10%(6.46-93.71%)。在所有检测到的QTL中,qAC9的表型变异最高(93.71%)。此外,稳定表达了qEH4,qSEL6和q100KW10。这些QTL具有较高的表型差异,并且在两年中均观察到。因此,它们可能被视为主要的QTL。与其他研究相比,本研究中鉴定出的一些新QTL位于不同的基因座上。遗传区域(bin 4.08)强烈控制着植物的高度和穗的高度,是多效性和/或紧密连锁的结果。 qST3和qEH3共同位于两个常见的相邻简单序列重复(SSR)标记(umc2275和umc1273)内,而qEL6和qSEL6共同位于两个常见的相邻SSR标记(umc2309和bnlg238)内。与籽粒品质性状qWC4(水分含量)相关的QTL与位于侧翼标记umc1634和wx1(waxy1)之间的基因bt2(脆性胚乳2)和qAC9(直链淀粉含量)紧密相关。因此,这些SSR标记是筛选谷物产量和产量成分性状的有用选择工具。

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